Description

Book Synopsis
This updated volume provides a comprehensive and modern scientific approach to evaluating ship resistance and propulsion. It includes the latest developments in experimental and CFD techniques, and provides guidance for the practical estimation of ship propulsive power for a range of ship types.

Table of Contents
1. Introduction; 2. Propulsive power; 3. Components of hull resistance; 4. Model-ship extrapolation; 5. Model-ship correlation; 6. Restricted water depth and breadth; 7. Measurement of resistance components; 8. Wake and thrust deduction; 9. Numerical estimation of ship resistance; 10. Resistance design data; 11. Propulsor types; 12. Propeller characteristics; 13. Powering process; 14. Hull form design; 15. Numerical methods for propeller analysis; 16. Propeller design data; 17. Reductions in propulsive power and emissions; 18. Applications.

Ship Resistance and Propulsion

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    £89.29

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    RRP £93.99 – you save £4.70 (5%)

    Order before 4pm today for delivery by Sat 27 Jun 2026.

    A Hardback by Anthony F. Molland, Stephen R. Turnock, Dominic A. Hudson

    15 in stock


      View other formats and editions of Ship Resistance and Propulsion by Anthony F. Molland

      Publisher: Cambridge University Press
      Publication Date: 8/17/2017 12:00:00 AM
      ISBN13: 9781107142060, 978-1107142060
      ISBN10: 1107142067

      Description

      Book Synopsis
      This updated volume provides a comprehensive and modern scientific approach to evaluating ship resistance and propulsion. It includes the latest developments in experimental and CFD techniques, and provides guidance for the practical estimation of ship propulsive power for a range of ship types.

      Table of Contents
      1. Introduction; 2. Propulsive power; 3. Components of hull resistance; 4. Model-ship extrapolation; 5. Model-ship correlation; 6. Restricted water depth and breadth; 7. Measurement of resistance components; 8. Wake and thrust deduction; 9. Numerical estimation of ship resistance; 10. Resistance design data; 11. Propulsor types; 12. Propeller characteristics; 13. Powering process; 14. Hull form design; 15. Numerical methods for propeller analysis; 16. Propeller design data; 17. Reductions in propulsive power and emissions; 18. Applications.

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